The application of digital elevation model for the interpretation of Klang Valley geological structure
Identifieur interne : 000091 ( Main/Exploration ); précédent : 000090; suivant : 000092The application of digital elevation model for the interpretation of Klang Valley geological structure
Auteurs : Mohamad Abd Manap [Malaisie] ; Mohammad Firuz Ramli [Malaisie] ; Ghufran Redzwan [Malaisie]Source :
- Disaster Prevention and Management: An International Journal [ 0965-3562 ] ; 2009-11-06.
Descripteurs français
- Wicri :
- geographic : Malaisie.
- topic : Géomorphologie, Logiciel.
English descriptors
- KwdEn :
- Abdelsalam, Aerial photo, Aerial photo interpretation, African earth sciences, Contour data, Digital elevation model, Federated malay states, Geological interpretation, Geological mapping, Geological survey department, Geomorphology, Hawthorden schist, Himachal pradesh, Interpretation accuracy, Interpretation process, Klang, Klang valley, Kuala, Kuala lumpur, Kuala lumpur limestone formation, Lineament, Lithological, Lithological boundary, Lumpur, Malaysia, Ndings need, Oblique view, Perspective view, Quartz, Quartz reef, Satellite imagery, Schist, Selangor state park, Software, Srtm, Srtm dems, Study area, Thurmond, Tragheim, Utilising, Vertical view, Virdi, Volcanic hazard monitoring, Westhead.
- Teeft :
- Abdelsalam, Aerial photo, Aerial photo interpretation, African earth sciences, Contour data, Digital elevation model, Federated malay states, Geological interpretation, Geological mapping, Geological survey department, Geomorphology, Hawthorden schist, Himachal pradesh, Interpretation accuracy, Interpretation process, Klang, Klang valley, Kuala, Kuala lumpur, Kuala lumpur limestone formation, Lineament, Lithological, Lithological boundary, Lumpur, Malaysia, Ndings need, Oblique view, Perspective view, Quartz, Quartz reef, Satellite imagery, Schist, Selangor state park, Software, Srtm, Srtm dems, Study area, Thurmond, Tragheim, Utilising, Vertical view, Virdi, Volcanic hazard monitoring, Westhead.
Abstract
Purpose The purpose of this paper is to utilise the interactive view capability of the geographical information system GIS for the geological interpretation in Klang Valley, Malaysia. Designmethodologyapproach Topographical map scale of 110 000 was used to generate digital elevation model DEM. The geological map was draped over the DEM to create a 3D perspective view. The geological interpretation was undertaken using the 3D capability of the GIS software. Findings From the study, five lineaments which could possibly be the newly identified faults and one lithological boundary have been delineated. Research limitationsimplications Although these findings need to be rechecked in the field, they show the capability of the DEM application in structural geology interpretation. Practical implications The results obtained from this study demonstrate the capability of utilising a geological map draped over DEM for structural geological interpretation. Thus the technique may increase the interpretation accuracy. Originalityvalue The major outcome of this research is the possible use of DEM in the application of geological study.
Url:
DOI: 10.1108/09653560911003697
Affiliations:
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Le document en format XML
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<term>Contour data</term>
<term>Digital elevation model</term>
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<term>Interpretation accuracy</term>
<term>Interpretation process</term>
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<term>Kuala lumpur</term>
<term>Kuala lumpur limestone formation</term>
<term>Lineament</term>
<term>Lithological</term>
<term>Lithological boundary</term>
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<term>Malaysia</term>
<term>Ndings need</term>
<term>Oblique view</term>
<term>Perspective view</term>
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<term>Klang valley</term>
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<term>Lineament</term>
<term>Lithological</term>
<term>Lithological boundary</term>
<term>Lumpur</term>
<term>Malaysia</term>
<term>Ndings need</term>
<term>Oblique view</term>
<term>Perspective view</term>
<term>Quartz</term>
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<term>Satellite imagery</term>
<term>Schist</term>
<term>Selangor state park</term>
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<term>Srtm dems</term>
<term>Study area</term>
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<front><div type="abstract">Purpose The purpose of this paper is to utilise the interactive view capability of the geographical information system GIS for the geological interpretation in Klang Valley, Malaysia. Designmethodologyapproach Topographical map scale of 110 000 was used to generate digital elevation model DEM. The geological map was draped over the DEM to create a 3D perspective view. The geological interpretation was undertaken using the 3D capability of the GIS software. Findings From the study, five lineaments which could possibly be the newly identified faults and one lithological boundary have been delineated. Research limitationsimplications Although these findings need to be rechecked in the field, they show the capability of the DEM application in structural geology interpretation. Practical implications The results obtained from this study demonstrate the capability of utilising a geological map draped over DEM for structural geological interpretation. Thus the technique may increase the interpretation accuracy. Originalityvalue The major outcome of this research is the possible use of DEM in the application of geological study.</div>
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